2015
DOI: 10.14348/molcells.2015.2357
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The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells

Abstract: P2 receptors are membrane-bound receptors for extracellular nucleotides such as ATP and UTP. P2 receptors have been classified as ligand-gated ion channels or P2X receptors and G protein-coupled P2Y receptors. Recently, purinergic signaling has begun to attract attention as a potential therapeutic target for a variety of diseases especially associated with gastroenterology. This study determined the ATP and UTP-induced receptor signaling mechanism in feline esophageal contraction. Contraction of dispersed feli… Show more

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Cited by 13 publications
(8 citation statements)
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“…However, the direct role of P2X in SMC contraction is still unclear and most studies have not given a clear explanation for its function (Angus and Wright, 2015;Flores-Soto et al, 2011;Kwon et al, 2015). Finally, TRPC are highly expressed in SMC and have a clear role in the modulation of the surface membrane potential, tension and myogenic tone.…”
Section: Ca 2+ Homeostasismentioning
confidence: 99%
“…However, the direct role of P2X in SMC contraction is still unclear and most studies have not given a clear explanation for its function (Angus and Wright, 2015;Flores-Soto et al, 2011;Kwon et al, 2015). Finally, TRPC are highly expressed in SMC and have a clear role in the modulation of the surface membrane potential, tension and myogenic tone.…”
Section: Ca 2+ Homeostasismentioning
confidence: 99%
“…Electrical field stimulation (EFS)-induced contractions is mediated through P2Y receptors in cat esophageal smooth muscle [ 8 ]. Feline esophageal contraction is preferentially mediated by P2Y receptors coupled to Gαi 3 and Gαq proteins, which activate PLCβ, subsequently increase intracellular Ca 2+ and activate PKC [ 9 ].…”
Section: Physiological Functions Of P2y Receptors In the Digestive Ormentioning
confidence: 99%
“…Smooth muscle contraction or relaxation is widely known to play a crucial role in gastrointestinal motility ( 5 ). However, the immune and nervous systems of the gut have been reported to detect and integrate intraluminal signals to regulate physiological processes, including gastrointestinal motility.…”
Section: Introductionmentioning
confidence: 99%